Simulation of mold filling under counter gravity for A356 alloy and A356/SiCp composite

Dynamic characteristics of mold filling under counter gravity for A356 alloy and A356/SiCp composites are compared and analyzed. It is pointed out that there exists much difference in fluidity and flow morphology between A356 alloy and the composites due to the difference in viscosity and equivalent...

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Published inMaterials science & engineering. A, Structural materials : properties, microstructure and processing Vol. 499; no. 1; pp. 130 - 133
Main Authors Zeng, Jianmin, Gu, Ping, Zou, Yongzhi, Xu, Zhengbing
Format Journal Article Conference Proceeding
LanguageEnglish
Published Kidlington Elsevier B.V 15.01.2009
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Abstract Dynamic characteristics of mold filling under counter gravity for A356 alloy and A356/SiCp composites are compared and analyzed. It is pointed out that there exists much difference in fluidity and flow morphology between A356 alloy and the composites due to the difference in viscosity and equivalent solidification latent. The mold filling under counter gravity can be described by a second-order nonlinear equation characterized by damping oscillations. Composite flows steadier than the matrix alloy during mold filling, and the temperature field resulting from mold filling is more beneficial to directional solidification.
AbstractList Dynamic characteristics of mold filling under counter gravity for A356 alloy and A356/SiCp composites are compared and analyzed. It is pointed out that there exists much difference in fluidity and flow morphology between A356 alloy and the composites due to the difference in viscosity and equivalent solidification latent. The mold filling under counter gravity can be described by a second-order nonlinear equation characterized by damping oscillations. Composite flows steadier than the matrix alloy during mold filling, and the temperature field resulting from mold filling is more beneficial to directional solidification.
Author Zou, Yongzhi
Zeng, Jianmin
Xu, Zhengbing
Gu, Ping
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Cites_doi 10.1016/S0921-5093(00)01548-3
10.1016/j.msea.2004.02.011
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Issue 1
Keywords Simulation
Counter gravity casting
A356/SiCp composites
Damping
Viscosity
Aluminium base alloys
Directional solidification
Composite material
Dispersion strengthened metal
Non linear equation
Casting
Silicon carbide
Fluidity
Oscillation
Mold filling
Microstructure
Gravity
Language English
License CC BY 4.0
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PublicationTitle Materials science & engineering. A, Structural materials : properties, microstructure and processing
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Elsevier
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Snippet Dynamic characteristics of mold filling under counter gravity for A356 alloy and A356/SiCp composites are compared and analyzed. It is pointed out that there...
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SubjectTerms A356/SiCp composites
Applied sciences
Counter gravity casting
Dispersion hardening metals
Exact sciences and technology
Foundry engineering
Metals. Metallurgy
Other casting methods. Solidification
Powder metallurgy. Composite materials
Production techniques
Simulation
Title Simulation of mold filling under counter gravity for A356 alloy and A356/SiCp composite
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